Yu J H, Wieser J, Adams T H
Department of Biology, Texas A&M University, College Station 77843, USA.
EMBO J. 1996 Oct 1;15(19):5184-90.
flbA encodes an Aspergillus nidulans RGS (regulator of G protein signaling) domain protein that is required for control of mycelial proliferation and activation of asexual sporulation. We identified a dominant mutation in a second gene, fadA, that resulted in a very similar phenotype to flbA loss-of-function mutants. Analysis of fadA showed that it encodes the alpha-subunit of a heterotrimeric G protein, and the dominant phenotype resulted from conversion of glycine 42 to arginine (fadA(G42R)). This mutation is predicted to result in a loss of intrinsic GTPase activity leading to constitutive signaling, indicating that activation of this pathway leads to proliferation and blocks sporulation. By contrast, a fadA deletion and a fadA dominant-interfering mutation (fadA(G203R)) resulted in reduced growth without impairing sporulation. In fact, the fadA(G203R) mutant was a hyperactive asexual sporulator and produced elaborate sporulation structures, called conidiophores, under environmental conditions that blocked wild-type sporulation. Both the fadA(G203R) and the fadA deletion mutations suppressed the flbA mutant phenotype as predicted if the primary role of FlbA in sporulation is in blocking activation of FadA signaling. Because overexpression of flbA could not suppress the fadA(G42R) mutant phenotype, we propose that FlbA's role in modulating the FadA proliferation signal is dependent upon the intrinsic GTPase activity of wild-type FadA.
flbA编码一种构巢曲霉RGS(G蛋白信号调节因子)结构域蛋白,该蛋白是控制菌丝体增殖和无性孢子形成激活所必需的。我们在第二个基因fadA中鉴定出一个显性突变,该突变导致了与flbA功能缺失突变体非常相似的表型。对fadA的分析表明,它编码一种异源三聚体G蛋白的α亚基,显性表型是由甘氨酸42突变为精氨酸(fadA(G42R))所致。预计该突变会导致内在GTP酶活性丧失,从而导致组成型信号传导,这表明该信号通路的激活会导致增殖并阻断孢子形成。相比之下,fadA缺失和fadA显性干扰突变(fadA(G203R))导致生长减少,但不影响孢子形成。事实上,fadA(G203R)突变体是一种无性孢子形成过度活跃的菌株,在阻止野生型孢子形成的环境条件下会产生复杂的孢子形成结构,称为分生孢子梗。如果FlbA在孢子形成中的主要作用是阻断FadA信号的激活,那么fadA(G203R)和fadA缺失突变都能抑制flbA突变体表型。由于flbA的过表达不能抑制fadA(G42R)突变体表型,我们提出FlbA在调节FadA增殖信号中的作用依赖于野生型FadA的内在GTP酶活性。